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{"references": ["M.M. Reda, N.G. Shrive, J.E. Gillott, \"Microstructural investigation of\ninnovative UHPC\", Cement and Concrete Research Volume 29, Issue 3,\nMarch 1999, Pages 323-329", "B.Graybeal, J. Tanesi, \"Durability of an ultrahigh-performance\nconcrete\", Journal of Materials in Civil Engineering, Volume 19, Issue\n10, October 2007, Pages 848-854", "R.K.Dhir, M.R.Jones, H.E.H.Ahmed, \"Determination of total and\nsolublechlorides in concrete\". Cement and Concrete Research, 20, pp.\n579-590, 1990.", "T. Luping, Chloride transport in concrete \u2013 measurement and\nprediction, Chalmers University of Technolofy, Goteborg 1996", "R. Pernicov\u00e1, M. Pavl\u00edkov\u00e1, R. \u010cern\u00fd, \"Effect of metakaolin on chloride\nbinding in lime-based composites\", WIT Transactions on Modelling and\nSimulation, 2007, Volume 46, 2007, Pages 357-365", "G.K. Glass, N.R.Buenfeld, \"The determination of chloride binding\nrelationships\" In: Proceedings of the RILEM International Workshop\nChloride Penetration into Concrete, edited by Nilsson, L.O. andOllivier,\nJ.P. RILEM, St-Remy-les-Chevreuse, 1997, pp. 3-9."]}
Chloride resistance in Ultra High Performance Concrete (UHPC) is determined in this paper. This work deals with the one dimension chloride transport, which can be potentially dangerous particularly for the durability of concrete structures. Risk of reinforcement corrosion due to exposure to the concrete surface to direct the action of chloride ions (mainly in the form de-icing salts or groundwater) is dangerously increases. The measured data are investigated depending on the depth of penetration of chloride ions into the concrete structure. Comparative measurements with normal strength concrete are done as well. The experimental results showed that UHCP have improved resistance of chlorides penetration than NSC and also chloride diffusion depth is significantly lower in UHCP.
One dimensional diffusion, Salinity, UHPC., Transport, Chloride
One dimensional diffusion, Salinity, UHPC., Transport, Chloride
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